A study of gamma ray bursts with afterglow plateau phases associated with supernovae
Maria G. Dainotti, Shigehiro Nagataki, Keichi Maeda, Sergey Postnikov, and Elena Pian

TL;DR
This study compares the luminosity-time correlation in gamma-ray burst afterglows with and without associated supernovae, revealing significant differences that could impact theoretical models of GRB plateau phases.
Contribution
It provides the first statistical comparison of the Dainotti relation between GRBs with and without supernova associations, highlighting potential differences in their energy reservoirs.
Findings
Significant correlation between luminosity and plateau end time in SN-associated GRBs.
No redshift evolution observed in the slope of the correlation for non-SN GRBs.
Statistically significant difference in the correlation slopes between SN-associated and non-SN GRBs.
Abstract
The analysis of 176 gamma ray burst (GRB) afterglow plateaus observed by Swift from GRBs with known redshifts revealed that the subsample of long GRBs associated with supernovae (LONG-SNe) - 19 events - presents a very high correlation coefficient between the luminosity at the end of the plateau phase La and the end time of the plateau T*a, hereafter Dainotti relation. Furthermore, these SNe Ib/c associated with GRBs also obey the peak-magnitude stretch relation, similar to that used to standardize the SNe Ia. We here investigate a category of GRBs with plateau and associated with SNe to compare the Dainotti correlation for this sample with the correlation for long GRBs for which no associated SN has been observed (hereafter LONG-NO-SNe, 128 GRBs) and to check whether there is a difference among these sub-samples. We first adopted a non-parametric statistical method to take redshift…
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